Juan Carlos Izpisua Belmonte
Affiliations: | Salk Institute for Biological Studies, La Jolla, CA, United States |
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"Juan Izpisua Belmonte"Parents
Sign in to add mentorEdward M. De Robertis | post-doc | David Geffen School of Medicine, University of California Los Angeles (Neurotree) | |
Denis Duboule | post-doc | EMBL Heidelberg |
Children
Sign in to add traineeAngel Raya | post-doc | Salk Institute (FlyTree) | |
masahiro sakurai | post-doc | Salk Institute | |
Jun Wu | post-doc | 2017 | Salk Institute |
Koji Tamura | research scientist | 1997-1999 | Salk Institute |
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Publications
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Haghani A, Li CZ, Robeck TR, et al. (2023) DNA methylation networks underlying mammalian traits. Science (New York, N.Y.). 381: eabq5693 |
Sato S, Hishida T, Kinouchi K, et al. (2023) The circadian clock CRY1 regulates pluripotent stem cell identity and somatic cell reprogramming. Cell Reports. 42: 112590 |
De Los Angeles A, Regenberg A, Mascetti V, et al. (2022) Why it is important to study human-monkey embryonic chimeras in a dish. Nature Methods |
Li R, Izpisua Belmonte JC. (2021) Protocol for the generation of blastocyst-like structures from mouse extended pluripotent stem cells. Star Protocols. 2: 100745 |
Tan T, Wu J, Si C, et al. (2021) Chimeric contribution of human extended pluripotent stem cells to monkey embryos ex vivo. Cell. 184: 3589 |
Tan T, Wu J, Si C, et al. (2021) Chimeric contribution of human extended pluripotent stem cells to monkey embryos ex vivo. Cell. 184: 2020-2032.e14 |
Prieto J, Ponsoda X, Izpisua Belmonte JC, et al. (2020) Mitochondrial dynamics and metabolism in induced pluripotency. Experimental Gerontology. 133: 110870 |
Niu Y, Sun N, Li C, et al. (2019) Dissecting primate early post-implantation development using long-term in vitro embryo culture. Science (New York, N.Y.) |
Li R, Zhong C, Yu Y, et al. (2019) Generation of Blastocyst-like Structures from Mouse Embryonic and Adult Cell Cultures. Cell. 179: 687-702.e18 |
Suzuki K, Yamamoto M, Hernandez-Benitez R, et al. (2019) Precise in vivo genome editing via single homology arm donor mediated intron-targeting gene integration for genetic disease correction. Cell Research |